natural gas storage
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Author(s):  
Shurraya Denning ◽  
Ahmad AA Majid ◽  
James M. Crawford ◽  
Moises A. Carreon ◽  
Carolyn A. Koh

Nanomaterials ◽  
2021 ◽  
Vol 11 (12) ◽  
pp. 3274
Author(s):  
Evgeny M. Strizhenov ◽  
Sergey S. Chugaev ◽  
Ilya E. Men’shchikov ◽  
Andrey V. Shkolin ◽  
Anatoly A. Zherdev

Adsorbed natural gas (ANG) technology is a promising alternative to traditional compressed (CNG) and liquefied (LNG) natural gas systems. Nevertheless, the energy efficiency and storage capacity of an ANG system strongly depends on the thermal management of its inner volume because of significant heat effects occurring during adsorption/desorption processes. In the present work, a prototype of a circulating charging system for an ANG storage tank filled with a monolithic nanoporous carbon adsorbent was studied experimentally under isobaric conditions (0.5–3.5 MPa) at a constant volumetric flow rate (8–18 m3/h) or flow mode (Reynolds number at the adsorber inlet from 100,000 to 220,000). The study of the thermal state of the monolithic adsorbent layer and internal heat exchange processes during the circulating charging of an adsorbed natural gas storage system was carried out. The correlation between the gas flow mode, the dynamic gas flow temperature, and the heat transfer coefficient between the gas and adsorbent was determined. A one-dimensional mathematical model of the circulating low-temperature charging process was developed, the results of which correspond to the experimental measurements.


2021 ◽  
Author(s):  
Paolo Zimmaro ◽  
Pengfei Wang ◽  
Domniki Asimaki ◽  
Zach Bullock ◽  
Ellen M. Rathje ◽  
...  

2021 ◽  
Vol 2116 (1) ◽  
pp. 012085
Author(s):  
Evgeny Strizhenov ◽  
Sergey Chugaev ◽  
Ilya Men’shchikov ◽  
Andrey Shkolin ◽  
Igor Shelyakin

Abstract The study of the thermal state of the monolithic adsorbent layer and internal heat exchange processes during the circulating charging of an adsorbed natural gas storage system was carried out. The correlation between gas flow mode and the heat transfer coefficient between gas and adsorbent is determined under conditions of mass transfer.


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